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Can you PLEASE put your answers like typed out in bold with the corresponding number of the question - it would be so perfect. thank

Can you PLEASE put your answers like typed out in bold with the corresponding number of the question - it would be so perfect. thank you so much

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5. [3.34/0 Points] LARPCALC10 3.5.036. PREVIOUS ANSWERS l ' PRACTICE ANOTHER The management at a plastics factory has found that the maximum number of units a worker can produce in a day is 45. The learning curve for the number N of units produced per day after a new employee has worked t days is modeled by N = 45(1 ekt). After 20 days on the job, a new employee produces 18 units. (a) Find the learning curve for this employee. (Hint: First, find the value of k. Round your value of k to three decimal places.) k = [-0.025 X N=| 18 x (b) How many days does the model predict will pass before this employee is producing 24 units per day? (Round your answer to the nearest whole number.) E Need Help? [(-Rumai ] [Cmenicl SupmitANswer 6. [4/0 Points] LARPCALC10 3.5.043. PREVIOUS ANSWERS PRACTICE ANOTHER A conservation organization released 100 animals of an endangered species into a game preserve. The preserve has a carrying capacity of 1200 animals. The growth of the pack is modeled by the logistic curve 1200 1+ 11e-0-1612 where t is measured in months (see figure). p(t) = P 1200 1000 800 600 400 200 t 5 10 15 20 (a) Estimate the population after 5 months. (Round your answer to the nearest whole number.) animals (b) After how many months is the population 7007 (Round your answer to the nearest whole number.) 7 v months (c) Use a graphing utility to graph the function. Use the graph to determine the horizontal asymptotes. p= : (smaller value) p= : (larger value) Interpret the meaning of the asymptotes in the context of the problem. The asymptote with the p-value indicates that the population size will approach this value as time increases. Need Help? 7. [0/0 Points] LARPCALC10 3.5.057. PREVIOUS ANSWERS H PRACTICE ANOTHER At 8:30 a.m., a coroner was called to the home of a person who had died during the night. In order to estimate the time of death, the coroner took the person's temperature twice. At 9:00 a.m. the temperature was 84.2F, and at 11:00 a.m. the temperature was 81.6F. From these two temperatures, the coroner was able to determine that the time elapsed since death and the body temperature were related by the formula T-70 t=-10In s 70 where t is the time in hours elapsed since the person died and T is the temperature (in degrees Fahrenheit) of the person's body. (This formula is derived from a general cooling principle called Newton's Law of Cooling. It uses the assumptions that the person had a normal body temperature of 98.6F at death, and that the room temperature was a constant 70F.) Use the formula to estimate the time of death of the person. (Round your answer to the nearest hour. ) 00 X AM. Need Help? [[omumai] [l Submit Answer 8. [0/14.28 Points] DETAILS MY NOTES LARPCALC10 3.5.007. PREVIOUS ANSWERS PRACTICE ANOTHER Find the missing values assuming continuously compounded interest. (Round your answers to two decimal places.) Initial Annual Time to Amount After Investment |% Rate Double 10 Years $1000 5.4% 1,716.01 X yr $ 12.84 X Need Help? Read It Submit Answer10. [0/14.29 Points] DETAILS MY NOTES LARPCALC10 3.5.025. PREVIOUS ANSWERS PRACTICE ANOTHER Find the exponential model that fits the points shown in the graph. (Round the exponent to four decimal places.) X (5, 16) 10 (0, 1) X 1 2 3 4 5 6 7 Need Help? Read It

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